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E-GEOD-75189 SRP066424, GSE75189 RNA-seq of coding RNA Homo sapiens

High-Resolution CRISPR Screens Reveal Fitness Genes and Genotype-Specific Cancer Liabilities

·发布 2015年11月25日 ·更新 2015年11月27日
5
样本数
5
实验数
实验描述

The ability to perturb genes in human cells is crucial for elucidating gene function and holds great potential for finding therapeutic targets for diseases such as cancer. To extend the catalog of human core and context- dependent fitness genes, we have developed a high-complexity second-generation genome-scale CRISPR-Cas9 gRNA library and applied it to fitness screens in five human cell lines. Using an improved Bayesian analytical approach, we consistently discover 5-fold more fitness genes than were previously observed. We present a list of 1,580 human core fitness genes and describe their general properties. Moreover, we demonstrate that context-dependent fitness genes accurately recapitulate pathway-specific genetic vulnerabilities induced by known oncogenes and reveal cell-type-specific dependencies for specific receptor tyrosine kinases, even in oncogenic KRAS backgrounds. Thus, rigorous identification of human cell line fitness genes using a high-complexity CRISPR-Cas9 library affords a high-resolution view of the genetic vulnerabilities of a cell. Additional data can be found at tko.ccbr.utoronto.ca RNAseq of five human cell lines with Cas9 knock-ins.

样本属性
genotype
Cas9 knock-in
organism
Homo sapiens
实验信息
登记号
E-GEOD-75189
GEO 编号
SRP066424, GSE75189
实验类型
RNA-seq of coding RNA
物种
Homo sapiens
发布日期
2015年11月25日
更新日期
2015年11月27日
提交者
Kevin R Brown、 Michal Zimmermann、 Frederick P Roth、 Graham MacLeod、 Peter Dirks、 Megha Chandrashekhar、 Patricia Mero、 Stephane Angers、 Amelie Fradet-Turcotte、 Song Sun、 Jason Moffat、 Daniel Durocher、 Jason Moffat、 Michael Aregger、 Monika Mis、 Traver Hart、 Olivia S Rissland、 Sachdev Sidhu、 Zachary Steinhart
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分析服务

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